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Directional multiband antenna 원문보기

IPC분류정보
국가/구분 United States(US) Patent 등록
국제특허분류(IPC7판)
  • H04B-010/00
  • H04B-010/2575
  • H01Q-021/06
  • H01Q-005/22
  • H01Q-005/42
  • G02B-006/32
  • H01Q-003/30
출원번호 US-0775097 (2014-03-04)
등록번호 US-9692512 (2017-06-27)
우선권정보 EP-13275067 (2013-03-15); GB-1304720.4 (2013-03-15)
국제출원번호 PCT/GB2014/050628 (2014-03-04)
국제공개번호 WO2014/140528 (2014-09-18)
발명자 / 주소
  • Griffith, Michael Stewart
  • Laycock, Leslie Charles
출원인 / 주소
  • BAE SYSTEMS plc
대리인 / 주소
    Finch & Maloney PLLC
인용정보 피인용 횟수 : 0  인용 특허 : 55

초록

There is disclosed a directional multi-band antenna comprising a substrate structure, a plurality of RF units arranged at the substrate structure to provide an RF phased array, the RF phased array having an angular scan range, an array of optical units arranged at the substrate structure and intersp

대표청구항

1. A directional multi-band antenna comprising: a substrate structure;a plurality of radio frequency (RF) units arranged at the substrate structure to provide an RF phased array, the RF phased array having an angular scan range;an array of optical units arranged at the substrate structure and inters

이 특허에 인용된 특허 (55)

  1. Bernard Jean-Jacques (Vert Le Grand FRX) Robieux Jean (Chatenay Malabry FRX), Adaptive antenna system for radio waves, in particular for microwaves.
  2. Yap,Daniel, Agile optical wavelength selection for antenna beamforming.
  3. Kotter, Dale K.; Novack, Steven D., Apparatuses and method for converting electromagnetic radiation to direct current.
  4. Guy, Ronald Frank Edward; Pirollo, Bruno Peter, Beam shaping for wide band array antennae.
  5. Zantos Nicholas G. (Arlington MA), Combined infrared-radar detection system.
  6. Chang, Yueh-Chi; Porter, Bradley G.; Fagerlund, Gregory M.; Bennett, Leonard C.; Sikina, Thomas V.; Mui, Brandon K., Conformal hybrid EO/RF aperture.
  7. Ali, Shirook; Warden, James, Controlling a beamforming antenna using reconfigurable parasitic elements.
  8. Kotter, Dale K.; Novack, Steven D., Devices, systems, and methods for harvesting energy and methods for forming such devices.
  9. Dunn, Charles E.; Young, Lawrence E., Digitally synthesized phased antenna for multibeam global positioning.
  10. Bruzzi, Jonathan R.; Boone, Bradley G., Dual band radio frequency (RF) and optical communications antenna and terminal design methodology and implementation.
  11. Chang Peter L. D. (Nashua NH) Hood William R. (Amherst NH), Dual mode energy detector having monolithic integrated circuit construction.
  12. Brumbaugh Charles T. (Fullerton CA) Pittenger Robert L. (Orange CA) Klees Robert M. (Costa Mesa CA), Dual mode radio frequency-infrared frequency system.
  13. Toth John F. (Reading MA) Favaloro Cosimo J. (Concord MA) Lane Jeffrey P. (Haverhill MA), Dual polarized dual band antenna.
  14. Margomenos, Alexandros, Dual-band antenna array and RF front-end for mm-wave imager and radar.
  15. Pepper, David M., Electro-optical programmable true-time delay generator.
  16. Chavez Joseph D. (Thousand Oaks CA), Electro-optically controlled wideband multi-beam phased array antenna.
  17. Hillis, W. Daniel; Myhrvold, Nathan P.; Tegreene, Clarence T.; Wood, Jr., Lowell L., Electromagnetic device with integral non-linear component.
  18. Adlerstein, Michael G., Embedded optical waveguide feed structure for radio frequency antenna arrays.
  19. Robert F. Kalman ; Robert T. Weverka, Fourier optical switch.
  20. Sayeed, Akbar M.; Behdad, Nader, Hybrid analog-digital phased MIMO transceiver system.
  21. Goutzoulis Anastasios P. (Pittsburgh PA) Davies David K. (Churchill Borough PA) Coppock Casey J. (Greensburg PA) Zomp John M. (North Huntingdon PA), Hybrid electronic-fiberoptic system for phased array antennas.
  22. Nichols Roy L. (Ridgecrest CA), Hybrid terminal assist landing.
  23. Boreman,Glenn D.; AbdelRahman,Mohamed, Infrared/millimeter-wave focal plane array.
  24. Chiang, Bing A., Low cost multiple pattern antenna for use with multiple receiver systems.
  25. Dorschner Terry A. (Newton Centre MA), Method for providing beam steering in a subaperture-addressed optical beam steerer.
  26. Pozgay, Jerome H., Methods and apparatus for multiple beam aperture.
  27. Takeuchi Kazunori (Ichigayata JPX) Yasunaga Masayuki (Tokyo JPX) Shiokawa Takayasu (Nukuiminami JPX), Microstrip antenna for two-frequency separate-feeding type for circularly polarized waves.
  28. Leiba, Yigal; Maysel, Boris, Millimeter-wave system with beam direction by switching sources.
  29. Izadpanah, Hossein; Mohktari, Mehran, Multi-aperture three-dimensional beamforming.
  30. Brown, Matthew D.; Barson, George F.; Hull, Jr., William P.; Mcfarlane, Steven P.; Wilson, James S.; Worthen, Karl L.; Lamb, Joshua; Taylor, Thomas H., Multi-band electronically scanned array antenna.
  31. van Hoorebeke, Tristan; Devitt, John, Multi-channel imaging devices.
  32. Yang-Tung Fan TW; Bii-Cheng Chang TW; Sheng-Liang Pan TW; Kuo-Liang Lu TW, Multi-microlens design for semiconductor imaging devices to increase light collection efficiency in the color filter process.
  33. Page Derrick J, Multi-stage optical commutator.
  34. Raber Peter E. (Milford CT) Kosowsky Lester H. (Stamford CT), Multimode, multispectral antenna.
  35. Dorschner, Terry A.; Friedman, Lawrence J.; Hobbs, Douglas S.; Lambert, Jr., L. Q., Optical beam steering system.
  36. Ji Yu,JPX ; Inagaki Keizo,JPX ; Imai Nobuaki,JPX ; Karasawa Yoshio,JPX, Optical control type phased array antenna apparatus equipped with optical signal processor.
  37. Yuxin Zhu, Optical phased array device and the method therefor.
  38. Pepper, David M.; Sumida, David; Berg, Richard P., Optical tapped time delay modules and arrays.
  39. Hui-Pin Hsu ; Tsung-Yuan Hsu, Optically controlled RF MEMS switch array for reconfigurable broadband reflective antennas.
  40. Lalezari, Farzin, Orthogonal linear transmit receive array radar.
  41. Gaeta, Celestino John, Passive photonic dense wavelength-division multiplexing true-time-delay system.
  42. Noriaki Obara JP, Phase control device and system for phased array antenna.
  43. Pepper, David M.; Minden, Monica, Phase control of a fiber optic bundle.
  44. Yi, Xiaoke; Huang, Thomas; Minasian, Robert, Phase shifter and photonic controlled beam former for phased array antennas.
  45. Turbiner, Dmitry, Phased antenna array for global navigation satellite system signals.
  46. Stumbo, David P.; Compton, Richard, Phased array systems.
  47. Merenda,Joseph; Rich,Mark J., Planar antenna for a wireless mesh network.
  48. Herman Melvin Presby ; John A. Tyson, Point-to-multipoint free-space wireless optical communication system.
  49. Kuffer Fernand B. (Brea CA), R.F. transparent RF/UV-IR detector apparatus.
  50. Tulchinsky, David A.; Matthews, Paul J., Reconfigurable optical beamformer for simplified time steered arrays.
  51. Anderson, William W.; Barquist, William S., System and method for transmitting signals via photonic excitation of a transmitter array.
  52. Goutzoulis Anastasios P. ; Zomp John M., Transmit-receive fiber-optic manifold for phase array antennas.
  53. Eung G. Paek, True time delay generating system and method.
  54. Stephens, Ronald Regis, Wavelength division multiplexing methods and apparatus for constructing photonic beamforming networks.
  55. Lee Jar J. ; Stephens Ronald R. ; Wang Harry T., Wideband phased array antennas and methods.
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